WO2006005697A1 - Systeme pour determiner l'occupation d'un siege de vehicule a moteur - Google Patents

Systeme pour determiner l'occupation d'un siege de vehicule a moteur Download PDF

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Publication number
WO2006005697A1
WO2006005697A1 PCT/EP2005/053195 EP2005053195W WO2006005697A1 WO 2006005697 A1 WO2006005697 A1 WO 2006005697A1 EP 2005053195 W EP2005053195 W EP 2005053195W WO 2006005697 A1 WO2006005697 A1 WO 2006005697A1
Authority
WO
WIPO (PCT)
Prior art keywords
network
vehicle
occupied
seat
occupant
Prior art date
Application number
PCT/EP2005/053195
Other languages
German (de)
English (en)
Inventor
Peter Karges
Michael Krempl
Hubert Melzl
Gerhard Wild
Original Assignee
Siemens Aktiengesellschaft
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Siemens Aktiengesellschaft filed Critical Siemens Aktiengesellschaft
Priority to DE502005003854T priority Critical patent/DE502005003854D1/de
Priority to EP05769953A priority patent/EP1765643B8/fr
Priority to JP2007520809A priority patent/JP4431614B2/ja
Publication of WO2006005697A1 publication Critical patent/WO2006005697A1/fr

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60RVEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
    • B60R21/00Arrangements or fittings on vehicles for protecting or preventing injuries to occupants or pedestrians in case of accidents or other traffic risks
    • B60R21/01Electrical circuits for triggering passive safety arrangements, e.g. airbags, safety belt tighteners, in case of vehicle accidents or impending vehicle accidents
    • B60R21/015Electrical circuits for triggering passive safety arrangements, e.g. airbags, safety belt tighteners, in case of vehicle accidents or impending vehicle accidents including means for detecting the presence or position of passengers, passenger seats or child seats, and the related safety parameters therefor, e.g. speed or timing of airbag inflation in relation to occupant position or seat belt use
    • B60R21/01512Passenger detection systems
    • B60R21/01516Passenger detection systems using force or pressure sensing means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60RVEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
    • B60R21/00Arrangements or fittings on vehicles for protecting or preventing injuries to occupants or pedestrians in case of accidents or other traffic risks
    • B60R21/01Electrical circuits for triggering passive safety arrangements, e.g. airbags, safety belt tighteners, in case of vehicle accidents or impending vehicle accidents
    • B60R21/015Electrical circuits for triggering passive safety arrangements, e.g. airbags, safety belt tighteners, in case of vehicle accidents or impending vehicle accidents including means for detecting the presence or position of passengers, passenger seats or child seats, and the related safety parameters therefor, e.g. speed or timing of airbag inflation in relation to occupant position or seat belt use
    • B60R21/01512Passenger detection systems
    • B60R21/0153Passenger detection systems using field detection presence sensors
    • B60R21/01532Passenger detection systems using field detection presence sensors using electric or capacitive field sensors
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B60VEHICLES IN GENERAL
    • B60RVEHICLES, VEHICLE FITTINGS, OR VEHICLE PARTS, NOT OTHERWISE PROVIDED FOR
    • B60R21/00Arrangements or fittings on vehicles for protecting or preventing injuries to occupants or pedestrians in case of accidents or other traffic risks
    • B60R21/01Electrical circuits for triggering passive safety arrangements, e.g. airbags, safety belt tighteners, in case of vehicle accidents or impending vehicle accidents
    • B60R21/015Electrical circuits for triggering passive safety arrangements, e.g. airbags, safety belt tighteners, in case of vehicle accidents or impending vehicle accidents including means for detecting the presence or position of passengers, passenger seats or child seats, and the related safety parameters therefor, e.g. speed or timing of airbag inflation in relation to occupant position or seat belt use
    • B60R21/01512Passenger detection systems
    • B60R21/01544Passenger detection systems detecting seat belt parameters, e.g. length, tension or height-adjustment

Definitions

  • the invention relates to a system for detecting the occupancy of a vehicle seat.
  • measuring elements are arranged flat on the seat surface of the vehicle seat, where a ge weight-dependent electrical signal can be tapped.
  • the measuring elements are arranged in a plurality of networks and are each interconnected in such a way that an electrical overall signal can be determined for each network;
  • An evaluation unit which is connected to each of the networks, for example, can determine whether a network is busy or unoccupied.
  • the triggering of an occupant restraining means is adapted in the event of a collision accident, if this is necessary for the best possible protection of a vehicle occupant.
  • measuring elements for example, weight-sensitive resistance elements which are arranged on the surface of a seat mat and with it on the seat surface of a vehicle seat.
  • the electrical resistance of the measuring elements changes according to a dependency (characteristic line) stored in the evaluation unit.
  • the change in the electrical resistances is detected by a suitable evaluation electronics and converted by the known dependence of the resistance values of the overlying weight in a value which corresponds approximately to the weight acting on the resistance element.
  • the triggering of an occupant restraining means may be influenced in order to optimally protect an occupant of the vehicle.
  • From the publication US 2001/0040056 A1 and from the patent EP 0 850 154 B1 it is furthermore known to switch weight-sensitive resistance elements into a plurality of grids in order to obtain different values from the resistance elements of a seat mat, the further, if necessary in the above sense can give useful information about the seating position of a vehicle occupant.
  • DE 101 42 813 A1 also discloses a system in which a belt-buckle sensor detects whether or not a safety belt is applied to the vehicle seat. A corresponding signal is transmitted to an evaluation unit, which then issues a warning to a vehicle occupant, for example, switches on a warning lamp or emits an acoustic warning tone.
  • the health or even the life of a vehicle occupant may depend on the triggering of an occupant restraining device.
  • an occupant protection device should therefore normally be triggered in any case when an occupant has been detected on the vehicle seat. This is true even when the presence of a vehicle occupant is only detected due to less available signals with correspondingly low informative value for occupant recognition.
  • a vehicle occupant should be comparatively recognized with less doubt before a warning is issued for a non-established seat belt; For example, a package placed on a passenger seat should not already trigger such a warning.
  • the object of the present invention is therefore to design a known system for detecting the occupancy of a vehicle seat in such a way that the triggering behavior of an occupant restraint means is changed on the one hand already in the event of a poorly plausible recognition of a seated vehicle occupant, on the other hand, the issuing of a
  • warning due to a non-established safety belt requires an additional plausibility check of a vehicle occupant actually present.
  • the system according to the invention for detecting the occupancy of a vehicle seat has measuring elements arranged flat on the seat surface of the vehicle seat, on each of which an electrical signal can be tapped, which varies depending on the applied weight force and with one another in several networks are interconnected, that for each network, a total electrical signal can be determined from which an evaluation can determine whether a network is busy or un ⁇ occupied.
  • the deployment of an occupant restraining means such as a front airbag, side airbags, knee airbags, curtain airbags, pretensioners or the like, is affected when at least one network or a combination of a few networks is or are occupied.
  • the evaluation unit of the invention recognizes from the signals of a Gurt ⁇ castle sensor, whether a seat belt is applied to the vehicle seat or not.
  • a corresponding warning about a non-applied safety belt is then output to the vehicle interior only if the safety belt is not worn was detected and at the same time another network or a combination of other networks was recognized as occupied or have been, at least one such further network in the longitudinal or transverse direction of the vehicle adjacent to the already-known network is arranged.
  • an occupancy state of the vehicle seat can be determined for each network.
  • some combinations are implausible for occupancy with a vehicle occupant: If, for example, two occupied networks lie at diagonally opposite ends of the planar arrangement of measuring elements, this points more to two contact points of an object than to a vehicle occupant. In such a case, for example, an airbag for this vehicle seat should be triggered, since a person could also be in an unusual position on the vehicle seat, but the warning about a possibly not applied seat belt can be dispensed with confidently.
  • each occupied network Preferably is for each occupied network or for each
  • this rule can be stored in an allocation table in a memory of the evaluation unit.
  • the system according to the invention is particularly advantageous when the measuring elements are resistors connected in parallel, whose resistance values vary with the applied weight force according to a characteristic curve.
  • the weight-varying resistances of the measuring elements can then be tapped, for example, in the form of voltages on the resistor elements or on the networks of resistive elements, while the current flow through a resistor grid is kept constant.
  • a resistance network defines the smallest area for which an occupancy state can be determined.
  • Other systems for detecting the vehicle seat occupancy have sensor elements which are distributed over the vehicle seat and can be addressed individually. There, the smallest area unit that can be used to evaluate a seat occupancy state, only the active sensor area of a single Sen ⁇ sorelements.
  • the various plausibility stages according to the invention are to be determined here only with a larger computing effort in the evaluation unit.
  • FIG. 1 shows an exemplary embodiment of a system according to the invention
  • FIG. 2 shows a control table for combinations of individual networks
  • FIG. 3 shows an exemplary embodiment of a system according to the invention, illustrated as a method sequence
  • Figure 4 shows an embodiment of an arrangement of Messele ⁇ elements of a erfindunuxen system.
  • FIG. 1 shows a vehicle seat 2 in plan view, on which a sensor seat mat 21 is arranged, which for reasons of clarity consists only of four individual networks 3, 4, 5, 6 of measuring elements, for example the variable resistors of FIG.
  • the nets 3 and 4 are arranged in the longitudinal direction of the vehicle (direction of travel) in front of the two nets 5 and 6; they are also arranged adjacent to one another in the corresponding transverse direction, that is to say the weight-sensitive surfaces which cover the two nets 3 and 4 on the vehicle seat 2 adjoin one another along a line on the seat mat 21. The same applies to the two rear nets 5 and 6.
  • the networks 3, 4, 5, 6 each have a connection P3, P4, P5 or P6, via which in each case a total signal of each of the networks V 4, 5, 6 is transmitted to an evaluation unit 7.
  • the evaluation unit 7 contains suitable evaluation electronics in accordance with the evaluation of the signals and is arranged on the sensor seat mat 21. However, the evaluation unit 7 could equally well be arranged elsewhere in the vehicle, for example in the central control unit 8, which is likewise shown.
  • the evaluation unit 7 is also supplied with the signal of a buckle sensor 12 which detects the engagement of a safety belt 10. which is arranged on the vehicle seat 2. Also shown is a vehicle occupant 11, which is belted to the vehicle seat 2 Fahr ⁇ .
  • the evaluation unit 7 transmits a signal, for example a binary coded data packet, via the illustrated connection line to the central control unit 8.
  • the transmitted signal informs the central control unit 8 on the one hand, whether a warning lamp 15 is to be activated in the passenger compartment, which is intended to alert the vehicle occupant 11 to a possibly not applied safety belt 10, and, on the other hand, whether a triggering unit 9 connected to the central control unit 8 should activate an airbag 14 as soon as the central control unit 8
  • There are indications of a severe collision for example due to supplied signals from acceleration and / or pressure sensors.
  • FIG. 2 shows a decision table 16 for influencing the tripping behavior of the occupant restraining means and / or issuing a warning 15 via a non-applied safety belt 10.
  • the networks 3, 4, 5 and 6 are indicated, in the underlying lines whose Bele ⁇ is state indicated: an occupied network 3, 4, 5, 6 with ei ⁇ ner logical 1 and an unassigned Network 3, 4, 5, 6 with a logic 0.
  • the last two columns show the respective conclusions for the seat occupancy recognition with regard to influencing the triggering behavior of the restraint 11, characterized by the term "PPD ⁇ (passenger presence detection), and the corresponding conclusion for the issuance of a warning 15 for a non-applied seat belt 10, briefly referred to as "SBR ⁇ (Seat BeIt Reminder).
  • the second line of the table shows all networks 3, 4, 5, 6 as busy (1) and the fields, "SBR” and "PPD” as well.
  • SBR vehicle occupant 11 on the Kraftmai ⁇ seat 2
  • PPD personal area network
  • the signals are still largely evaluated, for example with regard to the size and weight of the recognized vehicle occupant, often even with the addition of possibly further available signals, for example from a vehicle interior camera, inactive, capacitive or similar weight sensors, etc. Only then is it usually decided whether, for example, a front airbag possibly only partly triggered or even not triggered.
  • Lines 9 and 10 of Table 16 show the combination of two in the vehicle longitudinal direction front and rear arranged nets 3 and 4 or 5 and 6, which are arranged in eachhariquerrich ⁇ direction adjacent to each other. In both combinations, according to this exemplary embodiment, if necessary, the triggering behavior of the occupant protection means 14 should be influenced and, if appropriate, the safety belt warning lamp 15 should also be switched on. Lines 11 and 12 of Table 16 show the combination of two nets 4 and 6 or 3 and 5 arranged adjacent one behind the other in the vehicle longitudinal direction. In both combinations, the triggering behavior of the occupant protection means 14 is to be influenced since, as a precaution, an anwe ⁇ transmitter 12 should be accepted.
  • a seat belt warning lamp is not activated, since a correspondingly one-sided loading of the vehicle seat 2 is usually not generated by a vehicle occupant 11.
  • a safety belt warning lamp 15 could also be activated in these two combinations, if this is also desired in this case for plausible reasons.
  • FIG. 3 shows an exemplary embodiment of such a method.
  • a first step 200 the system is started or restarted if a restart of the system had to be performed after detecting an error.
  • a second method step 400 the assignment status of the networks 3, 4, 5, 6 is determined and from the table 16 from FIG. 2 for each combination of occupied or unoccupied networks 3, 4, 5, 6 the respective conclusion for the system. with regard to "PPD" and "SBR", read out.
  • step 600 the state of the buckle sensor 12 is asked ab ⁇ . If the safety belt 10 is applied, the logical status of the table field "PPD" is queried in step 801. If this field is occupied by a logical 1, the triggering of an occupant protection device 14 for a belted vehicle occupant 11 takes place in step 1001 if the central control unit 8 has also determined a correspondingly severe impact accident.
  • the system for detecting the occupancy of a vehicle seat is also switched off after a detected crash accident and after triggering of one or more occupant restraining means.
  • a new table 16 according to method step 400 is again provided with new measured values of the networks 3, 4, 5, 6.
  • method steps 801, 1001 and 1002 are executed as already described, with one difference:
  • method step 1001 the occupant restraining means 14 is now triggered for an unguarded vehicle occupant 11 (not shown in FIG. 1).
  • Table 16 queried. If this is occupied by a 1, a warning in the form of a safety belt warning lamp 15 (FIG. 1) is switched on in a further method step 1002 in order to request the vehicle occupant 11 to apply the safety belt 10. However, if it is determined in a step 1202 that the field "SBR" is set to 0, then is started again with the creation of a table 16 according to procedural step 400.
  • Figure 4 shows an embodiment of the system according to the invention in circuit diagram.
  • the four net sets 4, 5, 6 of FIG. 1 with the respective terminals P3, P4, P5, P6 are shown as in FIG. 1.
  • the ground terminal GND is shown.
  • the first network 3 consists of weight-resisting resistance elements R31, R32 and R3n, which are connected in parallel between the terminals P3 and GND.
  • the second network 4 also includes resistor elements R41, R42 and R4n connected in parallel between the connection P4 and ground GND.
  • the other networks 5 and 6 are connected to the resistor elements R51, R52, R5n or R61, R62, R6n, which are connected between the terminals P4 and P5 and GND.
  • n in the resistor elements R3n, R4n, R5n and R6n indicates that ⁇ many weight-dependent resistor elements may be connected in parallel in one of the networks 3, 4, 5, 6 in principle arbitrary.
  • the mode of operation of the first network 3 will be explained here, but the explanations shall also apply analogously to the other networks 4, 5, 6.
  • a constant current source of the evaluation unit 7 feeds a constant current in the connection P3.
  • the resistance elements R31, R32, ..., R3n change their value as soon as a weight acts on them. As a result, the voltage that can be picked up by the evaluation unit 7 between the terminal P3 and ground GND varies. Based on a stored in the evaluation unit 7
  • Dashed lines show a fixed resistor R3 F i x connected in parallel with the other resistors. This determines an upper voltage measurement value: If a connection line between the resistance elements R31, R32, R3n is interrupted, then the voltage which can be tapped off at connection P3 exceeds an upper value determined by the resistance R3 Fix . In this way, line interruption can be detected by the evaluation unit 7.
  • a further optional resistor R3 is serially drawn in front .
  • This fixed resistor R3 before is advantageously introduced when the weight-sensitive somebodysele ⁇ elements R31, R32, ..., R3n are designed as a short-circuit switch.
  • R3 VO r specifies a minimum voltage for this case, which must drop off at it. If there is a short circuit at the terminals, the voltage which can be tapped drops to ground and can thus be detected by the evaluation unit 7.
  • another weight-sensitive resistance element R3 SBR is shown in the illustrated exemplary embodiment whose signal serves as a further plausibility check for a vehicle seat 2 seated vehicle occupant 11 can optionally be used in addition.
  • a Gurtwarn- resistance element R3 SBR is positioned at a place of support for a pelvic bones of a vehicle occupant 11, so that the probability is very high that a voltage signal, which is significantly influenced by this resistance element R3 SBR , from a seated vehicle occupant stirred.
  • another fixed resistor R3 par is inserted parallel to the belt warning resistance element R3 S B R.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Air Bags (AREA)
  • Automotive Seat Belt Assembly (AREA)
  • Seats For Vehicles (AREA)

Abstract

Des éléments de résistance sensibles au poids d'un coussin de siège (21) à capteur sont interconnectés dans plusieurs réseaux (3,4,6). Une unité d'évaluation (7) détermine si un réseau (3, 4, 5, 6) est occupé (1) ou inoccupé (0). La combinaison de réseaux occupés et inoccupés (3, 4, 5, 6) permet de déterminer l'occupation d'un siège (2) de véhicule par un occupant (11) et d'adapter le cas échéant le déclenchement d'un élément de protection d'occupants (14) pour protéger l'occupant (11) du véhicule. Si en outre, une ceinture de sécurité (10) n'est pas bouclée, un signal d'avertissement correspondant n'est donné à l'occupant (11) du véhicule que si au moins un réseau supplémentaire (3, 4, 5, 6) est déterminé comme étant occupé, ce réseau étant disposé à proximité du réseau déjà déterminé dans le sens longitudinal ou transversal du véhicule.
PCT/EP2005/053195 2004-07-12 2005-07-05 Systeme pour determiner l'occupation d'un siege de vehicule a moteur WO2006005697A1 (fr)

Priority Applications (3)

Application Number Priority Date Filing Date Title
DE502005003854T DE502005003854D1 (de) 2004-07-12 2005-07-05 System zum erkennen der belegung eines fahrzeugsitzes
EP05769953A EP1765643B8 (fr) 2004-07-12 2005-07-05 Systeme pour determiner l'occupation d'un siege de vehicule a moteur
JP2007520809A JP4431614B2 (ja) 2004-07-12 2005-07-05 車両座席の占有状態を識別するシステム

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE200410033795 DE102004033795A1 (de) 2004-07-12 2004-07-12 System zum Erkennen der Belegung eines Fahrzeugsitzes
DE102004033795.0 2004-07-12

Publications (1)

Publication Number Publication Date
WO2006005697A1 true WO2006005697A1 (fr) 2006-01-19

Family

ID=34973016

Family Applications (1)

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PCT/EP2005/053195 WO2006005697A1 (fr) 2004-07-12 2005-07-05 Systeme pour determiner l'occupation d'un siege de vehicule a moteur

Country Status (5)

Country Link
EP (1) EP1765643B8 (fr)
JP (1) JP4431614B2 (fr)
DE (2) DE102004033795A1 (fr)
ES (1) ES2307198T3 (fr)
WO (1) WO2006005697A1 (fr)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2007039520A1 (fr) * 2005-09-27 2007-04-12 Iee International Electronics & Engineering S.A. Ensemble de capteur d'occupation de siege
JP2008528952A (ja) * 2005-01-21 2008-07-31 アイイーイー インターナショナル エレクトロニクス アンド エンジニアリング エス.エイ. 点検可能なシート占有センサ

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DE102007011277B4 (de) * 2007-03-08 2019-10-10 Volkswagen Ag Verfahren und Vorrichtung zur Sitzüberwachung
JP2009126231A (ja) * 2007-11-20 2009-06-11 Aisin Seiki Co Ltd 乗員検知装置

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US6282473B1 (en) * 1999-12-07 2001-08-28 Trw Vehicle Safety Systems Inc. System and method for controlling a vehicle occupant protection device
US20010040056A1 (en) 1997-09-19 2001-11-15 Aloyse Schoos Method and device for determining several parameters of a person sitting on a seat
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DE10142813A1 (de) 2001-08-31 2003-03-20 Eduard Hartmann Gmbh & Co Kg Gurtschloss
DE10160121A1 (de) 2001-12-07 2003-06-26 Siemens Ag Sensoranordnung
WO2003069293A1 (fr) * 2002-02-14 2003-08-21 Siemens Aktiengesellschaft Procede permettant de determiner la resistance electrique d'un cable d'alimentation electrique d'elements de detection et ensemble de detection

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WO1997010115A1 (fr) * 1995-09-12 1997-03-20 I.E.E. International Electronics & Engineering S.A.R.L. Dispositif de detection pour des sieges de vehicules
EP0850154A1 (fr) 1995-09-12 1998-07-01 I.E.E. International Electronics & Engineering S.à.r.l. Dispositif de detection pour des sieges de vehicules
US20010040056A1 (en) 1997-09-19 2001-11-15 Aloyse Schoos Method and device for determining several parameters of a person sitting on a seat
US6282473B1 (en) * 1999-12-07 2001-08-28 Trw Vehicle Safety Systems Inc. System and method for controlling a vehicle occupant protection device
DE10223218A1 (de) 2001-07-02 2003-01-23 Siemens Ag Einrichtung und Verfahren zur Sitzbelegungserkennung in einem Kraftfahrzeug
DE10142813A1 (de) 2001-08-31 2003-03-20 Eduard Hartmann Gmbh & Co Kg Gurtschloss
DE10160121A1 (de) 2001-12-07 2003-06-26 Siemens Ag Sensoranordnung
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JP2008528952A (ja) * 2005-01-21 2008-07-31 アイイーイー インターナショナル エレクトロニクス アンド エンジニアリング エス.エイ. 点検可能なシート占有センサ
WO2007039520A1 (fr) * 2005-09-27 2007-04-12 Iee International Electronics & Engineering S.A. Ensemble de capteur d'occupation de siege

Also Published As

Publication number Publication date
EP1765643A1 (fr) 2007-03-28
ES2307198T3 (es) 2008-11-16
EP1765643B1 (fr) 2008-04-23
JP4431614B2 (ja) 2010-03-17
JP2008505808A (ja) 2008-02-28
DE502005003854D1 (de) 2008-06-05
EP1765643B8 (fr) 2008-06-25
DE102004033795A1 (de) 2006-02-02

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